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Tri-control large angle electromagnetically induced reflection in metamaterials with graphene and vanadium dioxide

机译:具有石墨烯和钒二氧化钒的超材料大角度电磁诱导的反射

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Graphene and vanadium dioxide (VOsub2/sub) have been widely studied because of their flexibly tunable conductivity. In this study, a multilayer structure of a graphene disk and a VOsub2/sub square ring is investigated. The proposed structure exhibits an electromagnetically induced reflection (EIR) that is caused by a bright mode coupled with a dark mode. Since the permittivity of graphene can be modulated by chemical potential and electron–phonon relaxation time, while that of VOsub2/sub can be modulated by temperature, the EIR effect of the proposed structure can be tuned by the chemical potential and relaxation time of graphene as well as the surrounding temperature. Therefore, a triple-tunable EIR effect is obtained. Simulation results confirm that the tunable EIR phenomenon is polarization-independent owing to the symmetry of the structure. Moreover, a large angle EIR effect is obtained up to an angle of 80°. Our results can contribute significantly in applications of terahertz devices, such as slow light devices, absorbers, switching devices, and sensors.
机译:由于其灵活的可调谐导电性,石墨烯和二氧化钒(VO 2 )已被广泛研究。在该研究中,研究了石墨烯盘的多层结构和VO 2 平方环。所提出的结构表现出电磁引起的反射(EIR),其由耦合的暗模式耦合的明亮模式。由于石墨烯的介电常数可以通过化学电位和电子 - 声子弛豫时间来调节,而VO 2 可以通过温度调节,所以可以通过化学势调节所提出的结构的EIR效应和弛豫时间的石墨烯以及周围温度。因此,获得了三重可调的EIR效应。仿真结果证实,由于结构的对称性,可调谐EIR现象是极化无关的。此外,获得了大角度EIR效应,直到80°的角度。我们的结果可以在太赫兹设备的应用中有显着贡献,例如慢灯装置,吸收器,开关装置和传感器。

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